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Distributed voltage control of active MV distribution networks in the presence of high PV penetration

机译:在高光渗透的情况下,有源MV分配网络的分布式电压控制

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摘要

A distributed voltage control scheme for Medium Voltage (MV) distribution networks is proposed. The proposed scheme requires minimal information exchange between the nearby existing voltage control devices like On Load Tap Changer (OLTC), capacitor banks, etc. and three-phase smart inverters that may be connected at the far end of the line (EOL) in high PV penetration scenarios. A leading and lagging power factor (PF)-based algorithm is developed to properly coordinate these multiple inverters. Advanced Volt-Var characteristics of the smart inverter equipped with extended reactive power reserve is used to mitigate the voltage rise issue. A theoretical framework is also developed for setting the inverter control parameters. Simulation results from a modified IEEE 13 bus test system while using real field data verify the effectiveness of the proposed control method.
机译:提出了一种用于中电压(MV)分配网络的分布式电压控制方案。所提出的方案需要在负载分接开关(OLTC),电容器组等上的附近现有电压控制装置之间的最小信息交换,以及可以在高分状态(EOL)的远端(EOL)的三相智能逆变器之间的三相智能逆变器光伏渗透方案。开发了一种领先和滞后的功率因数(PF)基于基于算法,​​以正确坐标这些多个逆变器。配备延长无功功率储备的智能逆变器的高级电压特性用于减轻电压上升问题。还开发了理论框架,用于设置变频器控制参数。使用真实现场数据的修改IEEE 13总线测试系统的仿真结果验证了所提出的控制方法的有效性。

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